CN107979668B - Electronic device and display control method - Google Patents

Electronic device and display control method Download PDF

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CN107979668B
CN107979668B CN201711311379.8A CN201711311379A CN107979668B CN 107979668 B CN107979668 B CN 107979668B CN 201711311379 A CN201711311379 A CN 201711311379A CN 107979668 B CN107979668 B CN 107979668B
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display
display unit
unit
control
state
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CN107979668A (en
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张振华
尚可
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Lenovo Beijing Ltd
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Lenovo Beijing Ltd
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Abstract

The invention discloses an electronic device and a display control method. Electronic equipment comprises first organism and second organism, and first organism and second organism are connected through arranging the adapting unit in second organism one end, and first organism uses adapting unit to rotate as the relative second organism of axle center, and electronic equipment still includes: a first display unit disposed at an outer side of the first body with respect to the second body; a second display unit disposed inside the first body with respect to the second body; a third display unit disposed inside the second body with respect to the first body; a processing unit for generating a display signal; and a display control unit for generating a display control signal to control the first display unit, the second display unit and the third display unit to perform display according to the display signal.

Description

Electronic device and display control method
The divisional application is filed on 2012, on 25/6, with application number 201210213539.6, entitled "electronic device and display control method".
Technical Field
The present invention relates to the field of electronic devices, and in particular, to a display control method and an electronic device using the same.
Background
In recent years, electronic devices based on a cooperative architecture of a Communication Processor (CP) and an Application Processor (AP) have become popular. In electronic devices of this architecture, such as mobile phones, a dual-screen configuration has become the mainstream. In an electronic apparatus having a dual-screen configuration, two display screens are generally configured. Generally, the two display screens have different display area sizes and resolutions. One of the smaller display screens is disposed outside the housing of the flip-type or slide-type electronic device and is often used to display basic information about incoming numbers, short message themes, and the like, related to the communication processing performed by the communication processor. The larger, further display screen is arranged inside the housing of the clamshell or slide-type electronic device and is typically used for performing displays of video, game applications, text editing applications and the like in relation to the processing performed by the application processor.
With the further development of hardware of electronic devices such as mobile phones, the electronic devices have been able to provide faster arithmetic processing power and stronger graphic processing power for 3D display. However, since such portable electronic devices, such as mobile phones, are subject to the area of their display units, they generally do not provide display capabilities that match their central processor as well as their graphics processor, and thus do not provide a better display user experience for the user. Therefore, it is desirable to provide a display control method and an electronic device using the same, which can provide a single display unit or a combined display of a plurality of display units for a user according to different display requirements of the user in different use states of the electronic device, thereby providing the user with an optimal display user experience.
Disclosure of Invention
In view of the above, the present invention provides a display control method and an electronic device using the same.
According to an embodiment of the present invention, there is provided an electronic apparatus including a first body and a second body connected by a connecting member disposed at one end of the second body, the first body being rotatable with respect to the second body around the connecting member, the electronic apparatus further including: a first display unit disposed outside the first body with respect to the second body; a second display unit disposed inside the first body with respect to the second body; a third display unit disposed inside the second body with respect to the first body; a processing unit for generating a display signal; the display control unit is used for generating display control signals according to the display signals so as to control the first display unit, the second display unit and the third display unit to execute display; when the display signal indicates that the electronic equipment is in a first state, the display control unit generates a first display control signal so as to control only the first display unit to perform display, when the display signal indicates that the electronic equipment is in a second state, the display control unit generates a second display control signal so as to control the second display unit and the third display unit to perform display respectively, and when the display signal indicates that the electronic equipment is in a third state, the display control unit generates a third display control signal so as to control the second display unit and the third display unit to form an integral display unit to perform display.
Further, an electronic apparatus according to an embodiment of the present invention, wherein the first display unit and the second display unit are configured by a double-sided display device using a single backlight unit.
Further, according to an embodiment of the present invention, the electronic apparatus, wherein at least one of the first display unit, the second display unit, and the third display unit is configured by an interactive touch display device.
Further, according to an embodiment of the present invention, the electronic apparatus, wherein the connection member between the second display unit and the third display unit is configured by a flexible display member.
According to another embodiment of the present invention, there is provided a display control method applied to an electronic apparatus, the electronic apparatus being configured by a first body and a second body, the first body and the second body being connected by a connecting member disposed at one end of the second body, the first body rotating with respect to the second body with the connecting member as an axis, the electronic apparatus further including a first display unit disposed outside the first body with respect to the second body; a second display unit disposed inside the first body with respect to the second body; a third display unit disposed inside the second body with respect to the first body; a processing unit for generating a display signal; the display control unit is used for generating display control signals according to the display signals so as to control the first display unit, the second display unit and the third display unit to execute display; the display control method comprises the following steps: the processing unit generates a display signal and transmits the display signal to the display control unit; the display control unit judges the corresponding state of the electronic equipment based on the received display signal; and the display control unit generates corresponding display control signals to control the first display unit, the second display unit and the third display unit to perform display based on the judgment result, wherein the display control unit generates a first display control signal to control only the first display unit to perform display when the display signal indicates that the electronic device is in a first state, when the display signal indicates that the electronic device is in a second state, the display control unit generates a second display control signal to control the second display unit and the third display unit to respectively perform display, and when the display signal indicates that the electronic equipment is in a third state, the display control unit generates a third display control signal so as to control the second display unit and the third display unit to form an integral display unit to perform display.
Further, a display control method according to another embodiment of the present invention, wherein the first display unit and the second display unit are configured by a dual-sided display device using a single backlight module.
In addition, according to a display control method of another embodiment of the present invention, at least one of the first display unit, the second display unit, and the third display unit is configured by an interactive touch display device.
Further, a display control method according to another embodiment of the present invention, wherein a connection member between the second display unit and the third display unit is configured by a flexible display member.
According to the display control method and the electronic equipment using the same, the single display unit or the combined display of a plurality of display units can be provided for the user according to different display requirements of the user on the electronic equipment in different use states, and therefore the optimal display user experience is provided for the user.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and are intended to provide further explanation of the claimed technology.
Drawings
FIG. 1 is a schematic diagram illustrating a first state of an electronic device according to an embodiment of the invention;
FIG. 2 is a schematic diagram illustrating a second state of an electronic device according to an embodiment of the invention;
FIG. 3 is a schematic diagram illustrating a third state of an electronic device according to an embodiment of the invention;
FIG. 4 is a functional block diagram illustrating an electronic device according to an embodiment of the present invention; and
fig. 5 is a flowchart illustrating a display control method applied to an electronic apparatus according to an embodiment of the present invention.
Detailed Description
Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings.
First, an electronic apparatus according to an embodiment of the present invention will be described with reference to (a) in fig. 1 to (C) in fig. 3. The electronic device according to the embodiment of the present invention may be a mobile phone or a personal digital assistant or a tablet computer having a communication function, etc.
Fig. 1 (a) and 1 (B) are schematic diagrams illustrating a first state (closed state) of the electronic apparatus 10 according to the embodiment of the present invention. Fig. 1 (a) is a side view of the electronic apparatus 10, and fig. 1 (B) is a front view of the electronic apparatus 10. As shown in fig. 1 (a) and 1 (B), the electronic device 10 has a first body 100 and a second body 200 disposed opposite to each other. The first body 100 and the second body 200 are connected by a connection member 300 disposed at one end of the second body 200, and the first body 100 can rotate relative to the second body 200 with the connection member 300 as an axis. The electronic device 10 further comprises: a first display unit 101 disposed outside the first body 100 with respect to the second body 200; a second display unit 102 disposed inside the first body 100 with respect to the second body 200; and a third display unit 203 disposed inside the second body 200 with respect to the first body 100.
In a preferred embodiment of the present invention, the first display unit 101 and the second display unit 102, which are oppositely arranged, are configured by a dual-sided display device using a single backlight module. Unlike the two display units that are pasted together back to back, the double-sided display device using a single backlight module shares a single backlight module by two oppositely disposed display units, thereby further reducing the thickness of the first body 100 in which the first display unit 101 and the second display unit 102 are disposed.
In a preferred embodiment of the present invention, the first display unit 101, the second display unit 102, and the third display unit 203 may be different types of display units. The different types of display units include, but are not limited to, display units with different display principles, display units with different power consumption per unit area, display units with different primary colors of colors, display units with different backlight sources, and the like. For example, the first display unit 101 may be an LCD display unit, and the second display unit 102 and the third display unit 203 may be E-link (electronic ink technology) display units. The power consumption per unit area of the first display unit 101 may be 200 watts per square meter, and the power consumption per unit area of the second display unit 102 and the third display unit 203 may be 350 watts per square meter. Further, the first display unit 101 may be a single primary color display unit, and the second display unit 102 and the third display unit 203 may be dual primary color display units. Further, the first display unit 101 may be a reflective screen, and the second display unit 102 and the third display unit 203 may be display units based on the same configuration, such as an LCD or an OLED.
In a preferred embodiment of the present invention, any or all of the first display unit 101, the second display unit 102 and the third display unit 203 may be configured by an interactive touch display device. That is, the electronic device 10 according to the embodiment of the present invention may further include a first touch unit (not shown) at least partially overlapping the first display unit 101 and/or a second or third touch unit (not shown) at least partially overlapping the second display unit 102 and the third display unit 203. The first touch unit is disposed on the first display unit 101, and partially overlaps the first display unit 101 or completely overlaps the first display unit 101. The first display unit 101 and the first touch unit constitute a touch display unit, and a user can operate content displayed on the first display unit 101 by touching the first touch unit. Similarly, the second or third touch unit is disposed on the second display unit 102 or the third display unit 203, and partially overlaps the second display unit 102 or the third display unit 203 or completely overlaps the second display unit 102 or the third display unit 203. The second display unit 102 or the third display unit 203 and the second or third touch unit constitute a touch display unit, and a user can operate the content displayed on the second display unit 102 or the third display unit 203 by touching the second or third touch unit. This enables the first display unit 101, the second display unit 102 and the third display unit 203 to simultaneously implement the functions of the display unit and the input unit, so as to provide a better interactive experience for the user.
In a preferred embodiment of the present invention, the display area and power consumption of the first display unit 101 may be smaller than those of the second display unit 102 and the third display unit 203. That is, the first display unit 101 is mainly used to perform content display for the first state, i.e., the normal tablet phone mode. As shown in fig. 1B, when the electronic apparatus 10 according to the embodiment of the present invention is in the first state (closed state), the first display unit 101 is in the operating state, and the second display unit 102 and the third display unit 203 are in the closed state, i.e., the non-operating state. The user may perform basic operations of talking, reading and sending a short message, reading an electronic book, etc. only through the first display unit 101 disposed on the first body 100 without separating the first body 100 and the second body 200 of the electronic device 10. By thus configuring the various display units of the electronic device 10, power consumption of the electronic device 10 may be conserved, thereby extending the endurance of the electronic device 10.
Fig. 2 (a) and 2 (B) are schematic diagrams illustrating a second state of the electronic apparatus 10 according to the embodiment of the present invention. Fig. 2 (a) is a side view of the electronic device 10, and fig. 2 (B) is a front view of the electronic device 10. As shown in fig. 2 a and 2B, in the second state of the electronic device 10, the first body 100 is rotated by a predetermined angle α (generally, 90 ° < α < 180 °) with respect to the second body 200 about the connecting member 300. In this case, the second display unit 102 and the third display unit 203 become display units facing the user, and display is performed as needed. For example, in a preferred embodiment of the present invention, the second display unit 102 displays a picture of a document or the like being processed by a user, while the third display unit 103 displays a virtual keyboard or the like for inputting text and control commands. Of course, it is to be readily understood that the scope of the present invention is not so limited. In another preferred embodiment of the present invention, the second display unit 102 and the third display unit 103 may perform display independently from each other.
Fig. 3 (a) to 3 (C) are schematic views illustrating a third state of the electronic apparatus according to the embodiment of the present invention. Fig. 3 (a) is a side view of the electronic device 10, and fig. 3 (B) and 3 (C) are front views of the electronic device 10. As shown in fig. 3 (a) to 3 (C), in the third state of the electronic device 10, an angle between the first body 100 and the second body 200 is 180 °. That is, the second display unit 102 on the first body 100 and the third display unit 203 on the second body 200 are on the same plane. In this state, as shown in fig. 3 (B) and 3 (C), the second display unit 102 and the third display unit 203 may form one integral display unit as needed. In order to form the whole display unit, a connection portion (a dotted line portion in fig. 3 (B) and 3 (C)) between the second display unit 102 and the third display unit 203 may be configured by a flexible display member. In the first or second state shown in fig. 1 (a) to 2 (B), the flexible display member is in a flexible folded state. And in a third state shown in fig. 3 (a) to 3 (C), the flexible display member is in a fully extended state, thereby seamlessly connecting the second display unit 102 and the third display unit 203 as an integral display unit. In a preferred embodiment of the present invention, when the user wishes to perform the display of video and game content with a larger display unit, the electronic device 10 may switch to this third state, thereby performing high-quality display of a larger display area and higher resolution on the entire display unit formed by the second display unit 102 and the third display unit 203. That is, the electronic device according to the embodiment of the present invention provides a larger and seamless display, and improves the user experience, compared to the prior art.
In the above, the display of the electronic apparatus 10 according to the embodiment of the present invention in the first to third states, respectively, is described with reference to (a) in fig. 1 to (C) in fig. 3. Next, a display-related functional configuration of the electronic device 10 according to an embodiment of the present invention will be described with reference to fig. 4.
FIG. 4 is a functional block diagram illustrating an electronic device 10 according to an embodiment of the present invention. As shown in fig. 4, the display-related functional configuration of the electronic device 10 according to the embodiment of the present invention includes a processing unit 20, a display control unit 30, a first display unit 101, a second display unit 102, and a third display unit 203.
Specifically, the processing unit 20 generates a corresponding display signal according to an application running on the electronic device 10 and an input of a user, and transmits the display signal to the display control unit 30. The display control unit 30 generates a display control signal to control the first display unit 101, the second display unit 102, and the third display unit 203 to perform display according to the display signal. When the display signal indicates that the electronic device 10 is in the first state, the display control unit 30 generates a first display control signal to control only the first display unit 101 to perform display, when the display signal indicates that the electronic device 10 is in the second state, the display control unit 30 generates a second display control signal to control the second display unit 102 and the third display unit 203 to perform display, respectively, and when the display signal indicates that the electronic device 10 is in the third state, the display control unit 30 generates a third display control signal to control the second display unit 102 and the third display unit 203 to constitute an overall display unit to perform display.
Next, a display control method applied to the electronic apparatus 10 according to the embodiment of the present invention is further described with reference to fig. 5.
Fig. 5 is a flowchart illustrating a display control method applied to the electronic apparatus 10 according to an embodiment of the present invention. As shown in fig. 5, in step S501, the processing unit 20 generates a corresponding display signal according to an application running on the electronic device 10 and an input of a user, and transmits the display signal to the display control unit 30. Thereafter, the process proceeds to step S502.
In step S502, the display control unit 30 determines whether the electronic device 10 is in the first state based on the received display signal.
If a positive result is obtained in step S502, the process proceeds to step S503. In step S503, the display control unit 30 generates a first display control signal to control only the first display unit 101 to perform display.
In contrast, if a negative result is obtained in step S502, the process proceeds to step S504. In step S504, the display control unit 30 determines whether the electronic device 10 is in the second state based on the received display signal.
If a positive result is obtained in step S504, the process proceeds to step S505. In step S505, the display control unit 30 generates a second display control signal to control the second display unit 102 and the third display unit 203 to perform display, respectively.
In contrast, if a negative result is obtained in step S504, the process proceeds to step S506. In step S506, the display control unit 30 generates a third display control signal to control the second display unit 102 and the third display unit 203 to form an integral display unit to perform display.
The display control method and the electronic device using the display control method according to the embodiment of the present invention are described above with reference to fig. 1 (a) to 5, which can provide a single display unit or a combined display of a plurality of display units for a user according to different display requirements of the user in different use states of the electronic device, thereby providing the user with an optimal display user experience.
It should be noted that, in the present specification, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.
Finally, it should be noted that the series of processes described above includes not only processes performed in time series in the order described herein, but also processes performed in parallel or individually, rather than in time series.
Through the above description of the embodiments, those skilled in the art will clearly understand that the present invention may be implemented by software plus a necessary hardware platform, and may also be implemented by hardware entirely. With this understanding in mind, all or part of the technical solutions of the present invention that contribute to the background can be embodied in the form of a software product, which can be stored in a storage medium, such as a ROM/RAM, a magnetic disk, an optical disk, etc., and includes instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods according to the embodiments or some parts of the embodiments of the present invention.
The present invention has been described in detail, and the principle and embodiments of the present invention are explained herein by using specific examples, which are only used to help understand the method and the core idea of the present invention; meanwhile, for a person skilled in the art, according to the idea of the present invention, there may be variations in the specific embodiments and the application scope, and in summary, the content of the present specification should not be construed as a limitation to the present invention.

Claims (4)

1. The utility model provides an electronic equipment, electronic equipment comprises first organism and second organism, first organism and second organism are connected through arranging the adapting unit in second organism one end, first organism with adapting unit is relative as the axle center the second organism rotates, electronic equipment still includes:
a first display unit disposed outside the first body with respect to the second body;
a second display unit disposed inside the first body with respect to the second body;
a third display unit disposed inside the second body with respect to the first body;
a processing unit for generating a display signal; and
the display control unit is used for generating display control signals according to the display signals so as to control the first display unit, the second display unit and the third display unit to execute display;
wherein a connection part between the second display unit and the third display unit is configured by a flexible display part,
wherein the display control unit generates a first display control signal to control only the first display unit to perform display when the display signal indicates that the electronic device is in a first state,
when the display signal indicates that the electronic device is in a second state, the display control unit generates a second display control signal to control the second display unit and the third display unit to perform display, respectively, an
When the display signal indicates that the electronic equipment is in a third state, the display control unit generates a third display control signal so as to control the second display unit and the third display unit to form an integral display unit to perform display;
wherein in the first state or the second state the flexible display member is in a flexibly folded state and in the third state the flexible display member is in a fully extended state, the second display unit and the third display unit being seamlessly connected into a unitary display unit; and is
Wherein all of the first display unit, the second display unit, and the third display unit are configured by an interactive touch display device.
2. The electronic apparatus of claim 1, wherein the first display unit and the second display unit are configured by a dual-sided display device using a single backlight module.
3. A display control method is applied to an electronic device, the electronic device is composed of a first body and a second body, the first body and the second body are connected through a connecting component arranged at one end of the second body, the first body rotates relative to the second body by taking the connecting component as an axis, and the electronic device further comprises a first display unit arranged on the outer side of the first body relative to the second body; a second display unit disposed inside the first body with respect to the second body; a third display unit disposed inside the second body with respect to the first body; a processing unit for generating a display signal; the display control unit is used for generating display control signals according to the display signals so as to control the first display unit, the second display unit and the third display unit to execute display; the display control method comprises the following steps:
the processing unit generates a display signal and transmits the display signal to the display control unit;
the display control unit judges the corresponding state of the electronic equipment based on the received display signal; and
the display control unit generates corresponding display control signals to control the first display unit, the second display unit and the third display unit to perform display based on the judgment result,
wherein a connection part between the second display unit and the third display unit is configured by a flexible display part,
wherein the display control unit generates corresponding display control signals to control the first display unit, the second display unit and the third display unit to perform display based on the determination result, including:
when the display signal indicates that the electronic device is in a first state, the display control unit generates a first display control signal to control only the first display unit to perform display,
when the display signal indicates that the electronic device is in a second state, the display control unit generates a second display control signal to control the second display unit and the third display unit to perform display, respectively, an
When the display signal indicates that the electronic equipment is in a third state, the display control unit generates a third display control signal so as to control the second display unit and the third display unit to form an integral display unit to perform display;
wherein in the first state or the second state the flexible display member is in a flexibly folded state and in the third state the flexible display member is in a fully extended state, the second display unit and the third display unit being seamlessly connected into a unitary display unit; and is
All of the first display unit, the second display unit and the third display unit are configured by an interactive touch display device.
4. The display control method of claim 3, wherein the first display unit and the second display unit are configured by a dual-sided display device using a single backlight module.
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